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首页> 外文期刊>The Journal of Chemical Physics >Quantum tunneling in real space: Tautomerization of single porphycene molecules on the (111) surface of Cu, Ag, and Au
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Quantum tunneling in real space: Tautomerization of single porphycene molecules on the (111) surface of Cu, Ag, and Au

机译:真实空间中量子隧穿:铜,Ag和Au的(111)表面上单卟啉分子的互变化

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Tautomerization in single porphycene molecules is investigated on Cu(111), Ag(111), and Au(111) surfaces by a combination of low-temperature scanning tunneling microscopy (STM) experiments and density functional theory (DFT) calculations. It is revealed that the trans configuration is the thermodynamically stable form of porphycene on Cu(111) and Ag(111), whereas the cis configuration occurs as a meta-stable form. The trans - cis or cis - trans conversion on Cu(111) can be induced in an unidirectional fashion by injecting tunneling electrons from the STM tip or heating the surface, respectively. We find that the cis - cis tautomerization on Cu(111) occurs spontaneously via tunneling, verified by the negligible temperature dependence of the tautomerization rate below similar to 23 K. Van der Waals corrected DFT calculations are used to characterize the adsorption structures of porphycene and to map the potential energy surface of the tautomerization on Cu(111). The calculated barriers are too high to be thermally overcome at cryogenic temperatures used in the experiment and zero-point energy corrections do not change this picture, leaving tunneling as the most likely mechanism. On Ag(111), the reversible trans - cis conversion occurs spontaneously at 5 K and the cis - cis tautomerization rate is much higher than on Cu(111), indicating a significantly smaller tautomerization barrier on Ag(111) due to the weaker interaction between porphycene and the surface compared to Cu(111). Additionally, the STM experiments and DFT calculations reveal that tautomerization on Cu(111) and Ag(111) occurs with migration of porphycene along the surface; thus, the translational motion couples with the tautomerization coordinate. On the other hand, the trans and cis configurations are not discernible in the STM image and no tautomerization is observed for porphycene on Au(111). The weak interaction of porphycene with Au(111) is closest to the gas-phase lim
机译:通过低温扫描隧道显微镜(STM)实验和密度泛函理论(DFT)计算,在Cu(111),Ag(111)和Au(111)表面上研究了单卟啉分子中的互变异物。揭示反式配置是Cu(111)和Ag(111)上的热力学稳定形式的卟啉(111),而CIS构型作为元稳定形式发生。 Trans-& CIS或CIS - & Cu(111)上的反式转换可以通过从STM尖端注入隧道电子或加热表面来以单向的方式诱导。我们发现CIS& - & CI(111)上的顺式互变异物通过隧道自发地发生,通过较低的互变异物化率的较低的温度依赖性验证,类似于23k。范德瓦尔斯矫正DFT计算用于表征卟啉的吸附结构并映射潜在能量表面Cu(111)上的互变异物。计算出的屏障太高而无法在实验中使用的低温温度下热克服,零点能量校正不会改变这张照片,使隧道成为最可能的机制。在Ag(111)上,可逆反式& - & CIS转化自发地发生在5 k和CIS& - & CIS互变化率远高于Cu(111),表示由于卟啉和表面与Cu(111)相比较弱的孔和表面相互作用而显着较小的互变异物屏障。另外,STM实验和DFT计算揭示了Cu(111)和Ag(111)的互变异物,沿着表面迁移卟啉;因此,平移运动与互变异构型坐标耦合。另一方面,在STM图像中不可辨别反应和CIS配置,并且在Au(111)上没有观察到卟啉的互变异物。卟啉与Au(111)的弱相互作用最接近气相肢体

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